Separation and characterization of the aldehydic products of lipid peroxidation stimulated by ADP-Fe2+ in rat liver microsomes

Разделение и характеристика альдегидных продуктов перекисного окисления липидов, стимулированного ADP–Fe2+, в микросомах печени крысы
H. Esterbauer, T. F. Slater, Kevin H. Cheeseman, Umberto Dianzani, Giuseppe Poli
1982-10-15

4-hydroxynonenalADP-Fe2+ stimulationhigh-pressure liquid chromatographylipid peroxidationrat liver microsomes
1. Methods using t.l.c. and high-pressure liquid chromatography (h.p.l.c.) have been used to separate the complex variety of substances possessing a carbonyl function that are produced during lipid peroxidation. 2. The major type of lipid peroxidation studied was the ADP-Fe2+-stimulated peroxidation of rat liver microsomal phospholipids. Preliminary separation of the polar and non-polar products was achieved by t.l.c.: further separation and identification of individual components was performed by h.p.l.c. Estimations were performed on microsomal pellets and the supernatant mixture after incubation of microsomes for 30 min at 37 degrees C. 3. The polar fraction was larger than the non-polar fraction when expressed as nmol of carbonyl groups/g of liver. In the non-polar supernatant fraction the major contributors were n-alkanals (31% of the total), alpha-dicarbonyl compounds (22%) and 4-hydroxyalkenals (37%) with the extraction method used. 4. Major individual contributors to the non-polar fraction were found to be propanal, 4-hydroxynonenal, hexanal and oct-2-enal. Other components identified include butanal, pent-2-enal, hex-2-enal, hept-2-enal, 4-hydroxyoctenal and 4-hydroxyundecenal. The polar carbonyl fraction was less complex than the non-polar fraction, although the identities of the individual components have not yet been established. 5. Since these carbonyl compounds do not react significantly in the thiobarbituric acid reaction, which largely demonstrates the presence of malonaldehyde, it is concluded that considerable amounts of biologically reactive carbonyl derivatives are released in lipid peroxidation and yet may not be picked up by the thiobarbituric acid reaction.
1
In the non-polar supernatant fraction, n-alkanals comprised 31%, alpha-dicarbonyl compounds 22%, and 4-hydroxyalkenals 37% of extracted carbonyl products.
2
Substantial biologically reactive carbonyl derivatives are produced during lipid peroxidation but are largely missed by the thiobarbituric acid assay, which mainly detects malonaldehyde.
3
TLC followed by HPLC separated and characterized carbonyl-containing products generated during ADP-Fe2+-stimulated peroxidation of rat liver microsomal phospholipids.
4
The major individual non-polar products were propanal, 4-hydroxynonenal, hexanal, and oct-2-enal; several additional aldehydes were also identified.
5
The polar carbonyl fraction was larger than the non-polar fraction by carbonyl content, but its individual components were not identified and it was less complex.

ADP-Fe2+-stimulated lipid peroxidation of rat liver microsomal phospholipids

The composition, separation, and characterization of carbonyl products—especially aldehydes—formed during microsomal lipid peroxidation, including their detection by the thiobarbituric acid reaction

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1982-10-15
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H. Esterbauer
T. F. Slater
Kevin H. Cheeseman
Umberto Dianzani
Giuseppe Poli
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